多色手性钙钛矿纳米线薄膜,具有强而可定制的圆偏振发光

Fang Peng , Dan Liang , En Yang , Bongjun Yeom , Yuan Zhao , Wei Ma
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引用次数: 0

摘要

钙钛矿显示了创新圆极化发光(CPL)-主动多通道信息加密的潜在前景,由于其特殊的发光亮度。制备具有明显发光不对称因子(glum)和可定制全彩色CPL性能的CPL活性钙钛矿仍然是一个巨大的挑战。事实上,与各向同性钙钛矿相比,各向异性钙钛矿纳米线有利于载流子的分离和输运,从而增强极化。本文分别合成了三种具有绿色、橙色、红色荧光(FL)的CsPb(Br/I)3 NWs,并将其组装成手性NW膜。由4+4层和45°夹角构成的右手/左手手性NW膜表现出高度对称的镜状手性信号。最强手性强度在3000 medg以上。可产生480 ~ 800 nm宽色域的CPL信号,可根据钙钛矿NWs的发射波长来调整CPL波长。一个巨大的CPL信号,最大负压高达10−1。手性NW薄膜的偏振成像可产生绚丽的差圆偏振结构色,使其在多级防伪系统中得到更广泛的应用。一项重大突破在于开发出具有卓越胶性和可定制CPL性能的先进手性钙钛矿材料,为光学防伪和智能信息加密提供了新的思路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Multicolor chiral perovskite nanowire films with strong and tailorable circularly polarized luminescence

Multicolor chiral perovskite nanowire films with strong and tailorable circularly polarized luminescence
Perovskites showcased potential promise for innovative circularly polarized luminescence (CPL)-active multichannel information encryption, owing to the exceptional luminescence brightness. It was still a formidable challenge to fabricate CPL-active perovskites with significant luminescent asymmetry factor (glum) and full-colour-tailorable CPL properties. Indeed, compared to isotropic perovskites, anisotropic perovskite nanowires (NWs) were conducive to carrier separation and transport for polarization enhancement. Herein, three types of CsPb(Br/I)3 NWs with green, orange, red fluorescence (FL) were respectively synthesized and assembled into chiral NW films. The right-handed/left-handed chiral NW films constructed by 4+4 layers and 45° inter-angles exhibits highly symmetric and mirror-like chiral signals. The strongest chiral intensity is more than 3000 medg. CPL signals with wide colour gamut produce ranging from 480 ​nm to 800 ​nm, and tailorable CPL wavelengths are manipulated by the emission wavelength of perovskite NWs. A giant CPL signal with a maximum glum of up to 10−1 is achieved. The polarization imaging of chiral NW films produces brilliant differential circularly polarized structural colours, making it more widely used in multilevel anti-counterfeiting systems. A significant breakthrough lies in the development of advanced chiral perovskite materials with remarkable glum and tailorable CPL properties, which sheds new light on optical anti-counterfeiting and intelligent information encryption.
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